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Cotranslational Protein Folding with L-systems

机译:用L-Systems折叠配体蛋白质

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A protein molecule adopts a specific 3D structure, necessary for its function in the cell, through a process of folding. Modelling the folding process and predicting the final fold from the unique amino acid sequence remain challenging problems. We have previously described the application of L-systems, parallel rewriting rules, to modelling protein folding using two complementary approaches: a physics-based approach, using calculations of interatomic forces, and a knowledge-based approach, using data from fragments of known protein structures. Here we describe a model combining these two approaches creating an adaptive stochastic open L-systems model of protein folding. L-systems were originally developed to model growth and development. Here we also describe extensions of our L-systems models to investigate cotranslational protein folding, i.e. folding during protein biosynthesis on the ribosome, which is increasingly thought to play an important role. We demonstrate that cotranslational folding fits very naturally into the L-systems framework.
机译:通过折叠的过程,蛋白质分子采用其在电池中的功能所必需的特定的3D结构。建模折叠过程并从独特的氨基酸序列预测最终折叠保持挑战性问题。我们先前已经描述了L-Systems,并行重写规则的应用,以使用两个互补方法建模蛋白质折叠:使用来自已知蛋白质的片段的数据的基于物理的方法,使用基于基于知识的方法的方法和基于知识的方法结构。在这里,我们描述了组合这两种方法的模型,从而产生了蛋白质折叠的自适应随机开放式L-Systems模型。 L-Systems最初是开发的,以模拟增长和发展。在这里,我们还描述了我们的L-Systems模型的扩展,以研究Cot转移蛋白质折叠,即蛋白质生物合成期间的折叠,越来越思索发挥重要作用。我们展示了CoTanslational折叠非常自然地进入L-Systems框架。

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